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"ABL Glass" is a conductive glass primarily composed of vanadate. Based on this technology, we are conducting research on the development of new electrical and electronic component materials, as well as electrode materials, and their application techniques in products. It is an amorphous oxide that does not oxidize and does not develop rust like metals. Utilizing this feature, we have developed a new electrode that compensates for the shortcomings of conventional metal discharge electrodes in air atmospheres, where metals are typically less effective. Applications in electrostatic precipitators and sensor components are anticipated, and since it can be screen printed, it allows for the formation of a wide variety of electrode structures. [Features] - Available as glass frit or glass paste - Conductivity can be adjusted based on firing conditions - Applicable as discharge electrode material - Particle size of supplied glass frit is 2.5 to 3.0 μm (D50) - Custom metal powder-ABL glass mixed paste can also be produced according to your requirements *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationWe would like to introduce our business of "development of various types of nanoparticles." Based on a supercritical hydrothermal synthesis method that does not require organic solvents, we are engaged in the design development and prototyping of nanoparticles. Since our prototype equipment operates continuously, we can positively respond to customer requests regarding the concrete expansion of nanoparticle mass production. We research, develop, and manufacture various new nanoparticles that can be used in a wide range of fields, including electrical and electronic component materials, magnetic materials, medical materials, phosphor materials, electrode materials, catalysts, and high-refractive materials, supporting companies in creating new functional products with new properties tailored to their needs. 【Features of Continuous Supercritical Hydrothermal Synthesis Method】 ■ All substances found on Earth can be continuously synthesized as nanosized particles. ■ The synthesis occurs at high temperatures, resulting in particles with good crystallinity. ■ By inducing uniform nucleation, particles with a narrow particle size distribution can be obtained. ■ The reaction time is very short, on the order of seconds, allowing for mass production through continuous synthesis. ■ Nanoparticles with multi-component compositions can be synthesized. *For more details, please refer to the related links or feel free to contact us.
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Free membership registration"MS Coating" is a new surface treatment technology that forms a coating of metal or conductive ceramics on the surface of the workpiece through repeated micro-pulse discharges. It uses electrodes made from powdered materials and is processed in discharge machining oil, which is commonly used in discharge machining. Locally, the material reaches high temperatures that can melt it, but overall, the processing proceeds at room temperature. Therefore, the workpiece can be treated without deformation or cracking due to heat. 【Features】 ■ Uses electrodes made from powdered materials (TA electrode or SA electrode) ■ Processed in discharge machining oil ■ The material from the melted electrode transfers to the melted part of the workpiece, forming a coating ■ Treatment can be performed without deformation or cracking of the workpiece due to heat *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationWe provide high precision and high quality to meet the needs of new product development. No molds are required. From the acceptance of electronic drawing data such as DXF, IGES, and PRO_E data to the delivery of three-dimensional inspection measurement data, we offer high precision and high quality that fulfill users' new product development needs, thanks to our state-of-the-art equipment and exceptional technical staff.
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Free membership registrationThe development progress of ultra-fine discharge machining has made it possible to expand into the ultra-fine part processing that is particularly required for micromachines. The field of component manufacturing is now transitioning into a world that is made possible for the first time through a fusion system of electronic, chemical, and mechanical engineering technologies, in addition to traditional techniques.
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